4.5 Article

Three-dimensional polarization marked multiple-QR code encryption by optimizing a single vectorial beam

Journal

OPTICS COMMUNICATIONS
Volume 352, Issue -, Pages 25-32

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.optcom.2015.04.068

Keywords

Polarization encryption; Vectorial beam; Phase retrieval algorithm

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We demonstrate the feasibility of three dimensional (3D) polarization multiplexing by optimizing a single vectorial beam using a multiple-signal window multiple-plane (MSW-MP) phase retrieval algorithm. Original messages represented with multiple quick response (QR) codes are first partitioned into a series of subblocks. Then, each subblock is marked with a specific polarization state and randomly distributed in 3D space with both longitudinal and transversal adjustable freedoms. A generalized 3D polarization mapping protocol is established to generate a 3D polarization key. Finally, multiple-QR code is encrypted into one phase only mask and one polarization only mask based on the modified GerchbergSaxton (GS) algorithm. We take the polarization mask as the cyphertext and the phase only mask as additional dimension of key. Only when both the phase key and 3D polarization key are correct, original messages can be recovered. We verify our proposal with both simulation and experiment evidences. (C) 2015 Elsevier B.V. All rights reserved.

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